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971.
模拟排水沟渠非点源溶质氮迁移实验研究   总被引:7,自引:3,他引:4  
农田排水沟渠是由水-底泥-植物组成的复合生态结构,其间非点源溶质的迁移转化对研究沟渠拦截、控制和管理农业非点源污染具有重要意义.本研究以模拟排水沟渠静态实验为基础,以典型非点源溶质氮素为例,分析了实验期内水体、底泥及芦苇不同介质内氮含量变化过程,分析了底泥吸附与解析、芦苇生长与衰败等年内不同时期对水体中氮素浓度的影响,探讨了水-底泥-芦苇复合生态体内氮迁移及对水体中氮浓度的影响机制.结果表明,底泥的吸附与解吸、芦苇生长的吸收和同化对水体中氮素浓度均有影响,10月之前这种影响表现为促使水体中氮素浓度降低,是水体的氮净化过程;10月之后这种净化作用开始降低,11月之后表现为促使水体中氮素浓度升高.同时,模拟沟渠水-底泥-芦苇生态体内氮迁移联系密切,任一介质内或介质间氮素迁移转化都会引起水体中氮素浓度相应调整.  相似文献   
972.
三峡库区消落带土壤邻苯二甲酸二丁酯静态释放特征   总被引:4,自引:3,他引:1  
王法  王强  木志坚  杨志丹  宋娇艳 《环境科学》2015,36(7):2453-2458
为了解特大型水库消落带优先有机污染物迁移转化规律,以邻苯二甲酸二丁酯(DBP)为代表性优先污染物,采用静态淹水法研究了土壤中DBP浓度、上覆水离子强度、有机质含量等因素对三峡库区消落带土壤中DBP静态释放规律的影响.结果表明,消落带土壤中DBP在淹水前期由土壤向上覆水中迁移释放,该过程分为短暂但是释放速率较快的快速释放阶段和释放时间较长但释放速率较慢的慢速释放阶段,此过程可以很好地用二室一级动力模型拟合.随着土壤中添加的DBP浓度的增大,DBP向上覆水快速释放速率加快,而快速释放比例则减小;慢释放速率和慢速释放比例则正好相反.随着上覆水离子强度的增加,快速释放比例增加,使DBP向上覆水释放量增加.上覆水高浓度的DBP在淹水初期会抑制土壤DBP的释放而且使DBP释放达到最大值的时间延迟.上覆水添加腐殖酸后,快速释放速率、慢速释放速率和快速释放比例均增大,从而使DBP向上覆水的释放量也增加.  相似文献   
973.
张千湖  高兵  黄葳  颜晓妹  崔胜辉 《环境科学》2017,38(9):3610-3619
在人口增长和快速城市化的背景下,活性氮排放对生态环境的影响日益加剧.为研究省级尺度活性氮排放规律,采用排放因子法建立2000、2005及2010年福建省人为源活性氮排放清单,分析各地市3个年份活性氮排放量及排放强度特征.结果表明,3个年份福建省活性氮排放总量分别为538.4、587.0和619.97 Gg,呈整体增加趋势.在9个地级市中,增速最快的为莆田市,而漳州市排放量有所下降.排放量最大的为漳州和泉州,排放量最小的为宁德与厦门.从排放来源看,90%以上的排放来自农田生态系统和畜禽养殖系统.能源活动贡献较小,但其排放增长最为显著.2010年,各地市单位面积活性氮排放强度呈"东南沿海高西北内陆低"的格局,最高为厦门市,最低为三明市;GDP和人口排放强度则呈"东南沿海低西北内陆高"的格局,最高为南平市,最低为厦门市.在分析各地市活性氮排放源特征的基础上,探讨了不同地区活性氮减排重点,研究结果可为福建省及下辖各地市活性氮减排提供科学依据.  相似文献   
974.
本文采用车载排放测试系统对11辆国Ⅰ~国Ⅳ标准重型柴油车进行实际道路测试,利用GC-MS对样品中典型烷烃进行定量分析,解析重型柴油车尾气典型烷烃排放特征及规律.结果表明,排放标准对重型柴油车尾气中正构烷烃、藿烷类有机物排放有显著影响,总体呈现随排放标准的加严而降低的趋势,相比于国Ⅰ测试车辆,国Ⅳ测试车辆正构烷烃、17α(H),21β(H)-C30藿烷(C30-藿烷)、22S-和22R-17α(H),21β(H)-C31升藿烷(22S-C31升藿烷;22R-C31升藿烷)总排放因子分别降低了72.23%,64.95%,70.78%和74.68%.气相正构烷烃呈双峰前锋型,以C17~C18为主峰碳,固相呈单峰前锋型,以C18~C21为主峰碳.藿烷类有机物其22S-C31升藿烷/(22S-C31升藿烷+22R-C31升藿烷)的比值在0.46~0.56之间,平均值为0.50,符合石油中藿烷的分布特征.正构烷烃总排放因子与17α(H),21β(H)-C30藿烷总排放因子呈现出一定的线性关系,其R~2为0.926 8.此外,行驶工况对测试车辆正构烷烃及藿烷类有机物排放有较大影响,非高速工况下排放因子是高速工况的1.69~2.42倍.  相似文献   
975.
We developed the T3-induced Xenopus metamorphosis assay, which is supposed to be able to sensitively detect thyroid hormone(TH) signaling disruption of chemicals. The present study aimed to validate the T3-induced Xenopus metamorphosis assay by re-evaluating the TH signaling antagonism of tetrabromobisphenol A(TBBPA), a known TH signaling disruptor. According to the assay we developed, Xenopus tadpoles at stage 52 were exposed to 10–500 nmol/L TBBPA in the presence of 1 nmol/L T3. After 96 hr of exposure, TBBPA in the range of 10–500 nmol/L was found to significantly inhibit T3-induced morphological changes of Xenopus tadpoles in a concentration-dependent manner in term of body weight and four morphological endpoints including head area(HA), mouth width(MW), unilateral brain width/brain length(ULBW/BL), and hind-limb length/snout-vent length(HLL/SVL).The results show that these endpoints we developed are sensitive for characterizing the antagonistic effects of TBBPA on T3-induced metamorphosis. Following a 24-hr exposure,we found that TBBPA antagonized expression of T3-induced TH-response genes in the tail,which is consistent with previous findings in the intestine. We propose that the tail can be used as an alternative tissue to the intestine for examining molecular endpoints for evaluating TH signaling disruption. In conclusion, our results demonstrate that the T3-induced Xenopus metamorphosis assay we developed is an ideal in vivo assay for detecting TH signaling disruption.  相似文献   
976.
Rainwater contains substantial bacteria and rain is an efficient pathway for the dissemination of bacteria from the atmosphere to land and water surfaces.However,quantitative information on rainwater bacteria is very limited due to the lack of a reliable method.In this study,the epifluorescence microscopy enumeration with the LIVE/DEAD BacLight Bacterial Viability Kit stain was verified to quantify the abundance of viable and non-viable bacterial cells in rainwater,with the 4',6-diamidino-2-phenylindole(DAPI) stain for the reference of total cell counts.Results showed that the total counts of bacterial cells by LIVE/DEAD BacLight staining were consistent with those by DAPI staining,and the average detection efficiency was(109 ± 29)%.The ratio of cell count with glutaraldehyde fixation to that without fixation was(106 ± 5)%on average.The bacterial concentration in negative control was usually an order of magnitude lower than that in rainwater samples.However,in case of small precipitation,the abundance in negative control could be more than that in rainwater samples.These results indicate that the enumeration with LIVE/DEAD BacLight bacterial viability assay coupled with glutaraldehyde fixation and careful negative control investigation is an approach applicable to the measurement of the concentration and viability of bacterial cells in rainwater.  相似文献   
977.
The chemical oxygen demand (COD) and NH3-N removal, membrane fouling, sludge characteristics and microbial community structure in a membrane bioreactor (MBR) coupled with worm reactors (SSBWR) were evaluated for 210 days. The obtained results were compared to those from a conventional MBR (C-MBR) operated in parallel. The results indicated that the combined MBR (S-MBR) achieved higher COD and NH3-N removal efficiency, slower increase in membrane fouling, better sludge settleability and higher activities of the related enzymes in the activated sludge. Denaturing gradient gel electrophoresis was used to analyze the microbial community structures in the C-MBR and the S-MBR. The microbial community structure in the S-MBR was more diverse than that in the C-MBR. Additionally, the slow-growing microbes such as Saprospiraceae, Actinomyces, Frankia, Clostridium, Comamonas, Pseudomonas, Dechloromonas and Flavobacterium were enriched in the S-MBR, further accounting for the sludge reduction, membrane fouling alleviation and wastewater treatment.  相似文献   
978.
In this study, a lab-scale biological anaerobic/anaerobic/anoxic/membrane bioreactor(A_-~3MBR) was designed to treat wastewater from the ethanol fermentation of food waste,a promising way for the disposal of food waste and reclamation of resources. The 454 pyrosequencing technique was used to investigate the composition of the microbial community in the treatment system. The system yielded a stable effluent concentration of chemical oxygen demand(202 ± 23 mg/L), total nitrogen(62.1 ± 7.1 mg/L), ammonia(0.3 ±0.13 mg/L) and total phosphorus(8.3 ± 0.9 mg/L), and the reactors played different roles in specific pollutant removal. The exploration of the microbial community in the system revealed that:(1) the microbial diversity of anaerobic reactors A_1 and A_2, in which organic pollutants were massively degraded, was much higher than that in anoxic A_3 and aerobic MBR;(2) although the community composition in each reactor was quite different, bacteria assigned to the classes Clostridia, Bacteroidia, and Synergistia were important and common microorganisms for organic pollutant degradation in the anaerobic units, and bacteria from Alphaproteobacteria and Betaproteobacteria were the dominant microbial population in A_3 and MBR;(3) the taxon identification indicated that Arcobacter in the anaerobic reactors and Thauera in the anoxic reactor were two representative genera in the biological process. Our results proved that the biological A_-~3MBR process is an alternative technique for treating wastewater from food waste.  相似文献   
979.
Engineered oxide nanoparticles (NPs) are widely applied in insulators, catalyzers, paints, cosmetic products, textiles and semiconductors. Their attachment on cell membrane may lead to cytotoxicity. The effects of Al2O3, Fe2O3, SiO2, TiO2 and ZnO NPs on membrane integrity and fluidity were studied using giant or small unilamellar vesicles in this study. Al2O3 and SiO2 NPs disrupted the oppositely charged membrane, indicating the important role of electrostatic attraction. However, Fe2O3, TiO2 and ZnO NPs did not cause serious membrane disruption as Al2O3 and SiO2 NPs. Membrane fluidity was evaluated by the generalized polarity (GP) values of Laurdan fluorescent emission. SiO2 NPs induce the membrane gelation of both positively and negatively charged membrane. Al2O3 and ZnO NPs induced the gelation of the oppositely charged membrane, but did not cause obvious membrane gelation to the like charged membrane. The phospholipid molecular structural changes after NP exposure were analyzed by Fourier transform infrared (FT-IR) spectroscopy. FT-IR spectra revealed the hydrogen bond formation between NPs and the carbonyl/phosphate groups of phospholipids. Al2O3 and SiO2 NPs showed strongest evidence of hydrogen bonding on their FT-IR spectra. It was consistent with the microscopic observation and fluorescent data that Al2O3 and SiO2 NPs caused more serious membrane disruption and gelation. This study on membrane damage provides further knowledge on the cytotoxicity of nanomaterials and the safety of NP application.  相似文献   
980.
为考察光散射法和β射线衰减-光散射联用法的适用性,以β射线衰减法颗粒物自动监测仪(BAM)为标准,于2016年2月4日-4月18日,在中国环境科学研究院利用β射线衰减-光散射联用法颗粒物自动监测仪(MP-CPM)与光散射法传感器对ρ(PM10)和ρ(PM2.5)测量结果进行了对比.结果表明:① MP-CPM与BAM测量ρ(PM10)的结果具有较好的一致性,相关系数为0.92,平均相对偏差为0.04%;ρ(PM2.5)结果一致性较差,相关系数为0.69,MP-CPM测量ρ(PM2.5)整体较高于BAM,平均相对偏差为45.8%.② 光散射法传感器与BAM测量ρ(PM2.5)结果一致性较好,相关系数为0.85,平均相对偏差为11.24%,但ρ(PM10)远低于BAM,平均相对偏差为-44.64%.在特殊污染情景下,光散射法将因受到较大影响而严重错估颗粒物浓度.烟花燃放期间,MP-CPM和光散射法传感器严重低估颗粒物浓度,与BAM测量颗粒物浓度的平均相对偏差均低于-50%;沙尘污染过程中,MP-CPM严重高估ρ(PM2.5),与BAM测量ρ(PM2.5)结果平均相对偏差为79.27%,光散射法传感器严重低估ρ(PM10),与BAM测量ρ(PM10)结果平均相对偏差为-59.35%.研究显示,不同原理的仪器,在不同的使用场景下应该区别对待.   相似文献   
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